Jamil Fatima, Mukhtar Hamid, Fouillaud Mireille, Dufossé Laurent
Institute of Industrial Biotechnology, Government College University, Lahore 54000, Pakistan.
CHEMBIOPRO Chimie et Biotechnologie des Produits Naturels, Faculté des Sciences et Technologies, Université de la Réunion, F-97490 Sainte-Clotilde, Ile de La Réunion, France.
Microorganisms. 2022 Apr 25;10(5):899. doi: 10.3390/microorganisms10050899.
Rhizospheric plant-microbe interactions have dynamic importance in sustainable agriculture systems that have a reduced reliance on agrochemicals. Rhizosphere signaling focuses on the interactions between plants and the surrounding symbiotic microorganisms that facilitate the development of rhizobiome diversity, which is beneficial for plant productivity. Plant-microbe communication comprises intricate systems that modulate local and systemic defense mechanisms to mitigate environmental stresses. This review deciphers insights into how the exudation of plant secondary metabolites can shape the functions and diversity of the root microbiome. It also elaborates on how rhizosphere interactions influence plant growth, regulate plant immunity against phytopathogens, and prime the plant for protection against biotic and abiotic stresses, along with some recent well-reported examples. A holistic understanding of these interactions can help in the development of tailored microbial inoculants for enhanced plant growth and targeted disease suppression.
根际植物与微生物的相互作用在减少对农用化学品依赖的可持续农业系统中具有重要的动态意义。根际信号传导聚焦于植物与周围共生微生物之间的相互作用,这些相互作用促进了根际微生物群落多样性的发展,而这对植物生产力有益。植物与微生物的交流包含复杂的系统,这些系统调节局部和系统防御机制以减轻环境压力。本综述解读了关于植物次生代谢产物的分泌如何塑造根微生物组的功能和多样性的见解。它还阐述了根际相互作用如何影响植物生长、调节植物对植物病原体的免疫力,以及使植物做好抵御生物和非生物胁迫的准备,并列举了一些近期报道充分的实例。对这些相互作用的全面理解有助于开发定制化的微生物接种剂,以促进植物生长并针对性地抑制病害。